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Embryo-Specific Gene Expression in Microspore-Derived Embryos of Brassica napus. An Interaction between Abscisic Acid and Jasmonic Acid1, 2

机译:胚胎特异性基因在小孢子来源的胚胎中的表达 甘蓝型油菜。脱落之间的相互作用 酸和茉莉酸1,2

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摘要

The induction of napin and oleosin gene expression in Brassica napus microspore-derived embryos (MDEs) was studied to assess the possible interaction between abscisic acid (ABA) and jasmonic acid (JA). Napin and oleosin transcripts were detected sooner following treatment with ABA than JA. Treatment of MDEs with ABA plus JA gave an additive accumulation of both napin and oleosin mRNA, the absolute amount being dependent on the concentration of each hormone. Endogenous ABA levels were reduced by 10-fold after treatment with JA, negating the possibility that the observed additive interaction was due to JA-induced ABA biosynthesis. Also, JA did not significantly increase the uptake of [3H-ABA] from the medium into MDEs. This suggests that the additive interaction was not due to an enhanced carrier-mediated ABA uptake by JA. Finally, when JA was added to MDEs that had been treated with the ABA biosynthesis inhibitor fluridone, napin mRNA did not increase. Based on these results with the MDE system, it is possible that embryos of B. napus use endogenous JA to modulate ABA effects on expression of both napin and oleosin. In addition, JA could play a causal role in the reduction of ABA that occurs during late stages of seed development.
机译:研究了甘蓝型油菜小孢子来源的胚胎(MDEs)中napin和油质蛋白基因表达的诱导,以评估脱落酸(ABA)和茉莉酸(JA)之间可能的相互作用。 ABA处理后的Napin和油质蛋白转录物的检出时间比JA早。用ABA加JA处理MDE会产生napin和油质蛋白mRNA的累加积聚,绝对量取决于每种激素的浓度。用JA处理后,内源性ABA水平降低了10倍,从而消除了观察到的添加剂相互作用是由于JA诱导的ABA生物合成所致。此外,JA并没有显着增加培养基中[3H-ABA]对MDE的吸收。这表明加性相互作用不是由于JA增强了载体介导的ABA吸收。最后,当将JA添加到用ABA生物合成抑制剂氟啶酮处理过的MDE中时,napin mRNA不会增加。基于MDE系统的这些结果,油菜双歧杆菌的胚胎可能使用内源JA调节ABA对油菜籽蛋白和油蛋白表达的影响。此外,JA可能在种子发育后期发生的ABA降低中起因果作用。

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